Zheng Y, Cerione R, Bender A
Department of Pharmacology, Cornell University, Ithaca, New York 14850.
J Biol Chem. 1994 Jan 28;269(4):2369-72.
Bud emergence in Saccharomyces cerevisiae involves cell cycle-regulated reorganizations of cortical cytoskeletal elements and requires the action of the Rho (Ras homologous)-type GTPase Cdc42. As a first step toward understanding how these cytoskeletal rearrangements are controlled, we have sought to identify those proteins that regulate the binding and hydrolysis of GTP by Cdc42. Here we report that the product of the CDC24 gene, which is required for proper bud-site selection and bud emergence, can stimulate the exchange of GTP for GDP on Cdc42. Combined with previously reported genetic data, this finding suggests that the processes of bud-site selection (which requires the action of a Ras-type GTPase) and bud-site assembly might be coordinated through an activator of a Rho-type GTPase. We also report the identification of a new gene, BEM3, that is a multicopy suppressor of the temperature-sensitive lethality caused by mutations in the bud emergence gene BEM2. Bem3 and Bem2 both contain a Rho GTPase-activating protein homology domain, but only Bem3 is able to stimulate the hydrolysis of GTP on Cdc42. These studies demonstrate that Cdc24 and Bem3 have GDP-release factor activity and GTPase-activating protein activity, respectively, toward the essential bud-site assembly GTPase Cdc42.
酿酒酵母中的芽体出芽涉及皮质细胞骨架元件的细胞周期调控重组,并且需要Rho(Ras同源)型GTP酶Cdc42的作用。作为理解这些细胞骨架重排如何被控制的第一步,我们试图鉴定那些调节Cdc42结合和水解GTP的蛋白质。在此我们报道,CDC24基因的产物,它是正确的芽位点选择和芽体出芽所必需的,能够刺激Cdc42上的GTP与GDP的交换。结合先前报道的遗传数据,这一发现表明芽位点选择过程(需要Ras型GTP酶的作用)和芽位点组装可能通过Rho型GTP酶的激活剂来协调。我们还报道了一个新基因BEM3的鉴定,它是芽体出芽基因BEM2突变导致的温度敏感致死性的多拷贝抑制子。Bem3和Bem2都含有一个Rho GTP酶激活蛋白同源结构域,但只有Bem3能够刺激Cdc42上的GTP水解。这些研究表明,Cdc24和Bem3分别对必需的芽位点组装GTP酶Cdc42具有GDP释放因子活性和GTP酶激活蛋白活性。